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Cryogel composites based on hyaluronic acid and halloysite nanotubes as scaffold for tissue engineering
Journal article   Peer reviewed

Cryogel composites based on hyaluronic acid and halloysite nanotubes as scaffold for tissue engineering

Selin S. Suner, Sahin Demirci, Berkant Yetiskin, Rawil Fakhrullin, Ekaterina Naumenko, Oguz Okay, Ramesh S. Ayyala and Nurettin Sahiner
International journal of biological macromolecules, Vol.130, pp.627-635
06-01-2019
PMID: 30840861

Abstract

Biochemistry & Molecular Biology Chemistry Chemistry, Applied Life Sciences & Biomedicine Science & Technology Physical Sciences Polymer Science
We present here preparation of mechanically strong and biocompatible cryogel composites based on hyaluronic acid (HA) and halloysite nanotubes (HNTs) of various compositions, and their applications as scaffold for different cell growing media. Uniaxial compression tests reveal that the incorporation of HNTs into HA cryogels leads to a similar to 2.5-fold increase in their Young moduli, e.g., from 38 +/- 1 to 99 +/- 4 kPa at a HA:HNTs weight ratio of 1:2. Although HA:HNTs based cryogels were found to be blood compatible with 1.37 +/- 0.11% hemolysis ratio at a HA:HNTs weight ratio of 1:2, they trigger thrombogenic activity with a blood clotting index of 17.3 +/- 4.8. Remarkably, HA:HNTs cryogel composites were found to be excellent scaffold materials in the proliferation of rat mesenchymal stem cells (MSC), human cervical carcinoma cells (HeLa), and human colon cancer cells (HCT116). The cell studies revealed that an increased amount of HNT embedding into HA cryogels leads to an increase of MSC proliferation. (C) Elsevier B.V. All rights reserved.
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